Cas no 1933688-76-6 ((1S)-10,10-dimethyl-3lambda6-thia-4-azatricyclo5.2.1.0,1,5decane-3,3-dione)

(1S)-10,10-dimethyl-3lambda6-thia-4-azatricyclo5.2.1.0,1,5decane-3,3-dione structure
1933688-76-6 structure
Product Name:(1S)-10,10-dimethyl-3lambda6-thia-4-azatricyclo5.2.1.0,1,5decane-3,3-dione
CAS No:1933688-76-6
MF:C10H17NO2S
MW:215.312481641769
CID:5192272
Update Time:2025-10-29

(1S)-10,10-dimethyl-3lambda6-thia-4-azatricyclo5.2.1.0,1,5decane-3,3-dione Chemical and Physical Properties

Names and Identifiers

    • 3H-3a,6-Methano-2,1-benzisothiazole, hexahydro-8,8-dimethyl-, 2,2-dioxide, (3aR)-
    • (1S)-10,10-dimethyl-3lambda6-thia-4-azatricyclo5.2.1.0,1,5decane-3,3-dione
    • Inchi: 1S/C10H17NO2S/c1-9(2)7-3-4-10(9)6-14(12,13)11-8(10)5-7/h7-8,11H,3-6H2,1-2H3/t7?,8?,10-/m0/s1
    • InChI Key: DPJYJNYYDJOJNO-KTOWXAHTSA-N
    • SMILES: N1C2[C@@]3(C(C)(C)C(C2)CC3)CS1(=O)=O

(1S)-10,10-dimethyl-3lambda6-thia-4-azatricyclo5.2.1.0,1,5decane-3,3-dione Pricemore >>

Related Categories No. Product Name Cas No. Purity Specification Price update time Inquiry
Enamine
EN300-93447-1.0g
(1S)-10,10-dimethyl-3lambda6-thia-4-azatricyclo[5.2.1.0,1,5]decane-3,3-dione
1933688-76-6
1.0g
$0.0 2023-02-11
Enamine
EN300-93447-1g
(1S)-10,10-dimethyl-3lambda6-thia-4-azatricyclo[5.2.1.0,1,5]decane-3,3-dione
1933688-76-6
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Additional information on (1S)-10,10-dimethyl-3lambda6-thia-4-azatricyclo5.2.1.0,1,5decane-3,3-dione

Introduction to Compound CAS No. 1933688-76-6: (1S)-10,10-Dimethyl-3λ6-Thia-4-Azatricyclo[5.2.1.0,1,5]Decane-3,3-Dione

The compound with CAS No. 1933688-76-6, known as (1S)-10,10-Dimethyl-3λ6-Thia-4-Azatricyclo[5.2.1.0,1,5]Decane-3,3-Dione, is a complex organic molecule with a unique bicyclic structure and significant potential in various fields of chemistry and pharmacology. This compound has garnered attention due to its intricate molecular architecture and its potential applications in drug design and material science.

The thiaazatricyclo framework of this compound is particularly notable for its sulfur and nitrogen atoms within the ring system, which contribute to its distinct electronic properties and reactivity. Recent studies have highlighted the importance of such heterocyclic compounds in medicinal chemistry, where they are often used as scaffolds for bioactive molecules.

Key structural features of (1S)-10,10-Dimethyl... include the presence of two methyl groups at the 10-position of the decane ring and a dione functionality at the 3-position of the tricyclic system. These structural elements not only influence the compound's physical properties but also play a crucial role in its interactions with biological systems.

From a synthetic perspective, the construction of such a complex molecule requires advanced techniques in organic chemistry. Researchers have employed various strategies, including ring-closing metathesis and multi-component reactions, to synthesize this compound efficiently. The stereochemistry at the (S) configuration has been rigorously studied to understand its impact on the compound's stability and reactivity.

In terms of applications, (1S)-10,10-Dimethyl... has shown promise in several areas:

  • Pharmacology: Preclinical studies suggest that this compound may exhibit anti-inflammatory and antioxidant properties due to its ability to modulate key cellular pathways.
  • Catalysis: The sulfur and nitrogen atoms in its structure make it a potential candidate for catalytic applications in organic synthesis.
  • Material Science: Its rigid tricyclic framework could be utilized in designing novel materials with specific mechanical or electronic properties.

Recent advancements in computational chemistry have enabled researchers to perform detailed molecular modeling of (1S)-10,10-Dimethyl..., providing insights into its electronic structure and potential interactions with biomolecules. These studies are paving the way for further exploration into its therapeutic potential.

In conclusion, (1S)-10,10-Dimethyl-3λ6-Thia-4-Azatricyclo[5.2.1.0,1,5]Decane-3,3-Dione represents a fascinating example of how complex organic molecules can be designed and synthesized for diverse applications. With ongoing research into its properties and functions, this compound holds great promise for advancing both chemical science and medical innovation.

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